Wu Dong, Chen Yachao, Manna Sukriti, Talley Kevin, Zakutayev Andriy, Brennecka Geoff L, Ciobanu Cristian V, Constantine Paul, Packard Corinne E
IEEE Trans Ultrason Ferroelectr Freq Control. 2018 Nov;65(11):2167-2175. doi: 10.1109/TUFFC.2018.2862240. Epub 2018 Aug 16.
Knowledge of accurate values of elastic modulus of (AlSc)N is required for design of piezoelectric resonators and related devices. Thin films of (AlSc)N across the entire composition space are deposited and characterized. Accuracy of modulus measurements is improved and quantified by removing the influence of substrate effects and by direct comparison of experimental results with density functional theory calculations. The 5%-30% Sc compositional range is of particular interest for piezoelectric applications and is covered at higher compositional resolution here than in previous work. The reduced elastic modulus is found to decrease by as much as 40% with increasing Sc concentration in the wurtzite phase according to both experimental and computational techniques, whereas Sc-rich rocksalt-structured films exhibit little variation in modulus with composition.
设计压电谐振器及相关器件需要了解(AlSc)N弹性模量的精确值。在整个成分空间内沉积并表征了(AlSc)N薄膜。通过消除衬底效应的影响以及将实验结果与密度泛函理论计算直接比较,提高并量化了模量测量的准确性。5%-30%的Sc成分范围对压电应用尤为重要,与之前的工作相比,这里以更高的成分分辨率覆盖了该范围。根据实验和计算技术,发现纤锌矿相中随着Sc浓度增加,弹性模量降低多达40%,而富Sc的岩盐结构薄膜的模量随成分变化很小。